Zobrazeno 1 - 10
of 41
pro vyhledávání: '"Caines, Rachel"'
Autor:
Caines, Rachel1 rachel.caines@awm.gov.au
Publikováno v:
Genealogy (2313-5778). Jun2024, Vol. 8 Issue 2, p61. 18p.
Autor:
Baker, Emma, Moore, Trivess, Daniel, Lyrian, Caines, Rachel, Padilla, Hector, Lester, Laurence
Publikováno v:
AHURI Final Report; 5/4/2023, Issue 397, preceding pi-32, 37p
Autor:
Baker, Emma, Daniel, Lyrian, Beer, Andrew, Rowley, Steven, Stone, Wendy, Bentley, Rebecca, Caines, Rachel, Sansom, Gemma
Publikováno v:
AHURI Final Report; 10/20/2022, Issue 389, pi-37, 41p
Publikováno v:
Lilith (08138990); 2022, Issue 28, p3-10, 8p
Autor:
Caines, Rachel, Cochrane, Amy, Kelaini, Sophia, Gonzalez, Marta Vila, Yang, Chunbo, Eleftheriadou, Magdalini, Moez, Arya, Stitt, Alan W, Zeng, Lingfang, Grieve, David J, Margariti, Andriana
Publikováno v:
Caines, R, Cochrane, A, Kelaini, S, Gonzalez, M V, Yang, C, Eleftheriadou, M, Moez, A, Stitt, A W, Zeng, L, Grieve, D J & Margariti, A 2019, ' The RNA-binding protein QKI controls alternative splicing in vascular cells, producing an effective model for therapy ', Journal of Cell Science . https://doi.org/10.1242/jcs.230276
Rationale: Endothelial Cell (ECs) and Vascular Smooth Muscle Cell (VSMCs) dysfunction is central to Cardiovascular Disease pathology. Stem cell therapy holds great promise, but greater understanding of mechanisms underpinning vascular cell differenti
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______2607::8aec333b4bb8b5e896c40bf8e8904fe9
https://pure.qub.ac.uk/en/publications/the-rnabinding-protein-qki-controls-alternative-splicing-in-vascular-cells-producing-an-effective-model-for-therapy(9654419d-7f59-475f-af22-2db3d63a16aa).html
https://pure.qub.ac.uk/en/publications/the-rnabinding-protein-qki-controls-alternative-splicing-in-vascular-cells-producing-an-effective-model-for-therapy(9654419d-7f59-475f-af22-2db3d63a16aa).html
Enhanced Function of Induced Pluripotent Stem Cell‐Derived Endothelial Cells through ESM1 Signalling
Autor:
Vilà-González, Marta, Kelaini, Sophia, Drehmer, Daiana, Caines, Rachel, Tsifaki, Marianna, Margariti, Andriana
Publikováno v:
Vilà-González, M, Kelaini, S, Drehmer, D, Caines, R, Tsifaki, M & Margariti, A 2018, ' Enhanced Function of Induced Pluripotent Stem Cell-Derived Endothelial Cells through ESM1 Signalling ', Stem Cells . https://doi.org/10.1002/stem.2936
The mortality rate for (cardio)‐vascular disease is one of the highest in the world, so a healthy functional endothelium is of outmost importance against vascular disease. In this study, human induced pluripotent stem (iPS) cells were reprogrammed
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______3818::c3ab8d4920080519d67eec54890d3e5f
https://doi.org/10.1002/stem.2936
https://doi.org/10.1002/stem.2936
Publikováno v:
Tsifaki, M, Kelaini, S, Caines, R, Yacoub, A & Margariti, A 2018, ' Direct Reprogramming to Vascular Cells: A Mini-Review ', Journal of Genetics and Cell Biology, pp. 1-4 . < http://www.scitcentral.com/article.php?journal=26&article=259&article_title=Direct%20Reprogramming%20to%20Vascular%20Cells:%20A%20Mini-Review#tabs1 >
Recent advances in the field of direct reprogramming have changed the way we see and study the plasticity of somatic cells. Many research groups worldwide are developing techniques with which one cell type is directly converted into another without p
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______2607::b5766be870dec5f73db18aa8e4aa867f
https://pure.qub.ac.uk/en/publications/direct-reprogramming-to-vascular-cells-a-minireview(b8b8ade2-96c1-494e-8b2b-d98d228d6547).html
https://pure.qub.ac.uk/en/publications/direct-reprogramming-to-vascular-cells-a-minireview(b8b8ade2-96c1-494e-8b2b-d98d228d6547).html
Publikováno v:
Frontiers in Physiology
Frontiers in Physiology, Vol 9 (2018)
Yang, C, Kelaini, S, Caines, R & Margariti, A 2018, ' RBPs Play Important Roles in Vascular Endothelial Dysfunction Under Diabetic Conditions ', Frontiers in Physiology, vol. 9, no. 1310, pp. 1-11 . https://doi.org/10.3389/fphys.2018.01310
Frontiers in Physiology, Vol 9 (2018)
Yang, C, Kelaini, S, Caines, R & Margariti, A 2018, ' RBPs Play Important Roles in Vascular Endothelial Dysfunction Under Diabetic Conditions ', Frontiers in Physiology, vol. 9, no. 1310, pp. 1-11 . https://doi.org/10.3389/fphys.2018.01310
Diabetes is one of the major health care problems worldwide leading to huge suffering and burden to patients and society. Diabetes is also considered as a cardiovascular disorder because of the correlation between diabetes and an increased incidence
Autor:
Kelaini, Sophia, Vilà-González, Marta, Caines, Rachel, Campbell, David, Eleftheriadou, Magdalini, Tsifaki, Marianna, Magee, Corey, Cochrane, Amy, O'Neill, Karla, Yang, Chunbo, Stitt, Alan W, Zeng, Lingfang, Grieve, David J, Margariti, Andriana
Publikováno v:
Kelaini, S, Vilà-González, M, Caines, R, Campbell, D, Eleftheriadou, M, Tsifaki, M, Magee, C, Cochrane, A, O'Neill, K, Yang, C, Stitt, A W, Zeng, L, Grieve, D J & Margariti, A 2018, ' Follistatin-Like 3 Enhances the Function of Endothelial Cells Derived from Pluripotent Stem Cells by Facilitating β-Catenin Nuclear Translocation Through Inhibition of Glycogen Synthase Kinase-3β Activity ', Stem Cells, vol. 36, no. 7, pp. 1033-1044 . https://doi.org/10.1002/stem.2820
The fight against vascular disease requires functional endothelial cells (ECs) which could be provided by differentiation of induced Pluripotent Stem Cells (iPS Cells) in great numbers for use in the clinic. However, the great promise of the generate
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______2607::88b1a21a3b815daaace2b9e0adeac4da
https://pure.qub.ac.uk/en/publications/follistatinlike-3-enhances-the-function-of-endothelial-cells-derived-from-pluripotent-stem-cells-by-facilitating-catenin-nuclear-translocation-through-inhibition-of-glycogen-synthase-kinase3-activity(a409d5f2-141c-4214-b4a3-003eaad313ff).html
https://pure.qub.ac.uk/en/publications/follistatinlike-3-enhances-the-function-of-endothelial-cells-derived-from-pluripotent-stem-cells-by-facilitating-catenin-nuclear-translocation-through-inhibition-of-glycogen-synthase-kinase3-activity(a409d5f2-141c-4214-b4a3-003eaad313ff).html
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